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Thermal Deformation Analysis of Water Cooling Doubly Salient Brushless DC Generator With Stator Field Winding

机译:具有定子场绕组的水冷却双凸无刷直流发电机的热变形分析

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Thermal deformation changes the length of a variable reluctance machines air gap; this change has a significant effect on the machines power density and efficiency. The variable reluctance machine usually has a small air gap, which may cause scrapping failure (due to thermal deformation). Therefore, it is necessary to study the influence of thermal deformation on air gap length in order to avoid scrapping failure and to choose an optimal air gap length. The doubly salient brushless dc (DSBLDC) generator is a variable reluctance machine with stator field winding. Water cooling is the usual method for cooling a DSBLDC generator (as all excitation sources are mounted on the stator). In this paper, a water-cooling DSBLDC generator is employed to analyze thermal deformation. First, the configuration of the DSBLDC generator is introduced and the thermal distribution characteristics of the water-cooling DSBLDC generator are given. Second, the DSBLDC generator is separated into a yoke and pole in order to investigate its thermal deformation. A theoretical calculation model and a three-dimensional finite-element model are then proposed to analyze the thermal deformation. The influence of thermal deformation on the stator, rotor, and air gap length is further analyzed under different temperature distribution conditions. Finally, thermal deformations influence on output performance is discussed and the calculation and analysis of thermal deformation are verified through experimental results.
机译:热变形改变可变磁阻机气间隙的长度;这种变化对机器的功率密度和效率显著的效果。可变磁阻机通常具有小的气隙,这可能导致刮擦失效(由于热变形)。因此,有必要研究热变形对气隙长度的影响,以避免刮擦故障并选择最佳的气隙长度。双重阳光无刷直流(DSBLDC)发电机是一种具有定子场绕组的可变磁阻机。水冷是冷却DSBLDC发生器的通常方法(因为所有激励源都安装在定子上)。本文采用水冷DSBLDC发生器来分析热变形。首先,引入了DSBLDC发生器的配置,并给出了水冷DSBLDC发生器的热分布特性。其次,DSBLDC发生器分离成轭和杆以便研究其热变形。然后提出理论计算模型和三维有限元模型来分析热变形。热变形的定子,转子,和空气间隙长度的影响,不同的温度分布条件下进一步分析。最后,讨论了热变形对输出性能的影响,并通过实验结果验证了热变形的计算和分析。

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